forked from rook/rook
Currently create-dev-cluster.sh will hang as the rook operator gets stuck like so: ``` 2025-09-08 20:29:58.093909 E | ceph-cluster-controller: failed to reconcile CephCluster "rook-ceph/my-cluster". failed to reconcile cluster "my-cluster": failed to configure local ceph cluster: failed to create cluster: failed to start ceph monitors: failed to initialize ceph cluster info: failed to save mons: failed to create/update cephConnection: failed to get ceph connection CR: no matches for kind "CephConnection" in version "csi.ceph.io/v1" ``` Reconciling the mons is blocked until the new CephConnection CRD is available, and that CRD is new as of v1.18. The simple fix is to simply install those CRDs in create-dev-cluster.sh. After doing this, the dev cluster bootstraps fine. Signed-off-by: Elias Carter <elias@dropbox.com>
244 lines
9.6 KiB
Bash
Executable File
244 lines
9.6 KiB
Bash
Executable File
#!/usr/bin/env bash
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DEFAULT_NS="rook-ceph"
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CLUSTER_FILES="common.yaml operator.yaml cluster-test.yaml cluster-on-pvc-minikube.yaml dashboard-external-http.yaml toolbox.yaml csi-operator.yaml"
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MONITORING_FILES="monitoring/prometheus.yaml monitoring/service-monitor.yaml monitoring/exporter-service-monitor.yaml monitoring/prometheus-service.yaml monitoring/rbac.yaml"
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SCRIPT_ROOT=$(cd "$(dirname "${BASH_SOURCE[0]}")" && pwd -P)
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# Script arguments: new arguments must be added here (following the same format)
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export MINIKUBE_NODES="${MINIKUBE_NODES:=1}" ## Specify the minikube number of nodes to create
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export MINIKUBE_DISK_SIZE="${MINIKUBE_DISK_SIZE:=40g}" ## Specify the minikube disk size
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export MINIKUBE_EXTRA_DISKS="${MINIKUBE_EXTRA_DISKS:=3}" ## Specify the minikube number of extra disks
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export ROOK_PROFILE_NAME="${ROOK_PROFILE_NAME:=rook}" ## Specify the minikube profile name
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export ROOK_CLUSTER_NS="${ROOK_CLUSTER_NS:=$DEFAULT_NS}" ## CephCluster namespace
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export ROOK_OPERATOR_NS="${ROOK_OPERATOR_NS:=$DEFAULT_NS}" ## Rook operator namespace (if different from CephCluster namespace)
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export ROOK_EXAMPLES_DIR="${ROOK_EXAMPLES_DIR:="$SCRIPT_ROOT"/../../deploy/examples}" ## Path to Rook examples directory (i.e github.com/rook/rook/deploy/examples)
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export ROOK_CLUSTER_SPEC_FILE="${ROOK_CLUSTER_SPEC_FILE:=cluster-test.yaml}" ## CephCluster manifest file
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init_vars(){
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MINIKUBE="minikube --profile $ROOK_PROFILE_NAME"
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KUBECTL="$MINIKUBE kubectl --"
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echo "Using '$(realpath "$ROOK_EXAMPLES_DIR")' as examples directory.."
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echo "Using '$ROOK_CLUSTER_SPEC_FILE' as cluster spec file.."
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echo "Using '$ROOK_PROFILE_NAME' as minikube profile.."
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echo "Using '$ROOK_CLUSTER_NS' as cluster namespace.."
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echo "Using '$ROOK_OPERATOR_NS' as operator namespace.."
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}
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update_namespaces() {
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if [ "$ROOK_CLUSTER_NS" != "$DEFAULT_NS" ] || [ "$ROOK_OPERATOR_NS" != "$DEFAULT_NS" ]; then
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for file in $CLUSTER_FILES $MONITORING_FILES; do
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echo "Updating namespace on $file"
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sed -i.bak \
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-e "s/\(.*\):.*# namespace:operator/\1: $ROOK_OPERATOR_NS # namespace:operator/g" \
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-e "s/\(.*\):.*# namespace:cluster/\1: $ROOK_CLUSTER_NS # namespace:cluster/g" \
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-e "s/\(.*serviceaccount\):.*:\(.*\) # serviceaccount:namespace:operator/\1:$ROOK_OPERATOR_NS:\2 # serviceaccount:namespace:operator/g" \
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-e "s/\(.*serviceaccount\):.*:\(.*\) # serviceaccount:namespace:cluster/\1:$ROOK_CLUSTER_NS:\2 # serviceaccount:namespace:cluster/g" \
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-e "s/\(.*\): [-_A-Za-z0-9]*\.\(.*\) # csi-provisioner-name/\1: $ROOK_OPERATOR_NS.\2 # csi-provisioner-name/g" \
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-e "s/\(.*\): [-_A-Za-z0-9]*\.\(.*\) # driver:namespace:cluster/\1: $ROOK_CLUSTER_NS.\2 # driver:namespace:cluster/g" \
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"$file"
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done
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fi
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}
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wait_for_ceph_cluster() {
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echo "Waiting for ceph cluster to enter HEALTH_OK"
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WAIT_CEPH_CLUSTER_RUNNING=20
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while ! $KUBECTL get cephclusters.ceph.rook.io -n "$ROOK_CLUSTER_NS" -o jsonpath='{.items[?(@.kind == "CephCluster")].status.ceph.health}' | grep -q "HEALTH_OK"; do
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echo "Waiting for Ceph cluster to enter HEALTH_OK"
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sleep ${WAIT_CEPH_CLUSTER_RUNNING}
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done
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echo "Ceph cluster installed and running"
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}
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get_minikube_driver() {
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os=$(uname)
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architecture=$(uname -m)
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if [[ "$os" == "Darwin" ]]; then
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if [[ "$architecture" == "x86_64" ]]; then
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echo "hyperkit"
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elif [[ "$architecture" == "arm64" ]]; then
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echo "qemu"
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else
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echo "Unknown Architecture on Apple OS"
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exit 1
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fi
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elif [[ "$os" == "Linux" ]]; then
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echo "qemu2"
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else
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echo "Unknown/Unsupported OS"
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exit 1
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fi
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}
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show_info() {
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local monitoring_enabled=$1
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DASHBOARD_PASSWORD=$($KUBECTL -n "$ROOK_CLUSTER_NS" get secret rook-ceph-dashboard-password -o jsonpath="{['data']['password']}" | base64 --decode && echo)
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DASHBOARD_END_POINT=$($MINIKUBE service rook-ceph-mgr-dashboard-external-http -n "$ROOK_CLUSTER_NS" --url)
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BASE_URL="$DASHBOARD_END_POINT"
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echo "==========================="
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echo "Ceph Dashboard:"
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echo " IP_ADDR : $BASE_URL"
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echo " USER : admin"
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echo " PASSWORD : $DASHBOARD_PASSWORD"
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if [ "$monitoring_enabled" = true ]; then
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PROMETHEUS_API_HOST="http://$(kubectl -n "$ROOK_CLUSTER_NS" -o jsonpath='{.status.hostIP}' get pod prometheus-rook-prometheus-0):30900"
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echo "Prometheus Dashboard: "
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echo " API_HOST: $PROMETHEUS_API_HOST"
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fi
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echo "==========================="
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echo " "
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echo " *** To start using your rook cluster please set the following env: "
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echo " "
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echo " > eval \$($MINIKUBE docker-env)"
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echo " > alias kubectl=\"$KUBECTL"\"
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echo " "
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echo " *** To access the new cluster with k9s: "
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echo " "
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echo " > k9s --context $ROOK_PROFILE_NAME"
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echo " "
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}
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check_minikube_exists() {
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echo "Checking minikube profile '$ROOK_PROFILE_NAME'..."
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if minikube profile list -l 2> /dev/null | grep -qE "\s$ROOK_PROFILE_NAME\s"; then
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echo "A minikube profile '$ROOK_PROFILE_NAME' already exists, please use -f to force the cluster creation."
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exit 1
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fi
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}
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setup_minikube_env() {
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minikube_driver="$(get_minikube_driver)"
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echo "Setting up minikube env for profile '$ROOK_PROFILE_NAME' (using $minikube_driver driver)"
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$MINIKUBE delete
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$MINIKUBE start --disk-size="$MINIKUBE_DISK_SIZE" --extra-disks="$MINIKUBE_EXTRA_DISKS" --driver "$minikube_driver" -n "$MINIKUBE_NODES" $ROOK_MINIKUBE_EXTRA_ARGS
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eval "$($MINIKUBE docker-env)"
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}
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create_rook_cluster() {
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echo "Creating cluster"
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# create operator namespace if it doesn't exist
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if ! kubectl get namespace "$ROOK_OPERATOR_NS" &> /dev/null; then
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kubectl create namespace "$ROOK_OPERATOR_NS"
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fi
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$KUBECTL apply -f crds.yaml -f common.yaml -f operator.yaml -f csi-operator.yaml
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$KUBECTL apply -f "$ROOK_CLUSTER_SPEC_FILE" -f toolbox.yaml
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$KUBECTL apply -f dashboard-external-http.yaml
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}
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change_to_examples_dir() {
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if [ ! -e "$ROOK_EXAMPLES_DIR" ]; then
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echo "Examples directory '$ROOK_EXAMPLES_DIR' does not exist. Please, provide a valid rook examples directory."
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exit 1
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fi
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CRDS_FILE_PATH=$(realpath "$ROOK_EXAMPLES_DIR/crds.yaml")
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if [ ! -e "$CRDS_FILE_PATH" ]; then
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echo "File '$CRDS_FILE_PATH' does not exist. Please, provide a valid rook examples directory."
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exit 1
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fi
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ROOK_CLUSTER_SPEC_PATH=$(realpath "$ROOK_EXAMPLES_DIR/$ROOK_CLUSTER_SPEC_FILE")
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if [ ! -e "$ROOK_CLUSTER_SPEC_PATH" ]; then
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echo "File '$ROOK_CLUSTER_SPEC_PATH' does not exist. Please, provide a valid cluster spec file."
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exit 1
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fi
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cd "$ROOK_EXAMPLES_DIR" || exit
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}
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wait_for_rook_operator() {
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echo "Waiting for rook operator..."
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$KUBECTL rollout status deployment rook-ceph-operator -n "$ROOK_OPERATOR_NS" --timeout=180s
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while ! $KUBECTL get cephclusters.ceph.rook.io -n "$ROOK_CLUSTER_NS" -o jsonpath='{.items[?(@.kind == "CephCluster")].status.phase}' | grep -q "Ready"; do
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echo "Waiting for ceph cluster to become ready..."
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sleep 20
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done
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}
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enable_rook_orchestrator() {
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echo "Enabling rook orchestrator"
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$KUBECTL rollout status deployment rook-ceph-tools -n "$ROOK_CLUSTER_NS" --timeout=90s
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$KUBECTL -n "$ROOK_CLUSTER_NS" exec -it deploy/rook-ceph-tools -- ceph mgr module enable rook
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$KUBECTL -n "$ROOK_CLUSTER_NS" exec -it deploy/rook-ceph-tools -- ceph orch set backend rook
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$KUBECTL -n "$ROOK_CLUSTER_NS" exec -it deploy/rook-ceph-tools -- ceph orch status
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}
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enable_monitoring() {
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echo "Enabling monitoring"
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$KUBECTL create -f https://raw.githubusercontent.com/coreos/prometheus-operator/v0.82.0/bundle.yaml
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$KUBECTL wait --for=condition=ready pod -l app.kubernetes.io/name=prometheus-operator --timeout=30s
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$KUBECTL apply -f monitoring/rbac.yaml
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$KUBECTL apply -f monitoring/service-monitor.yaml
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$KUBECTL apply -f monitoring/exporter-service-monitor.yaml
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$KUBECTL apply -f monitoring/prometheus.yaml
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$KUBECTL apply -f monitoring/prometheus-service.yaml
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PROMETHEUS_API_HOST="http://$(kubectl -n "$ROOK_CLUSTER_NS" -o jsonpath='{.status.hostIP}' get pod prometheus-rook-prometheus-0):30900"
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$KUBECTL -n "$ROOK_CLUSTER_NS" exec -it deploy/rook-ceph-tools -- ceph dashboard set-prometheus-api-host "$PROMETHEUS_API_HOST"
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}
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show_usage() {
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echo ""
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echo "Usage: [ARG=VALUE]... $(basename "$0") [-f] [-r] [-m]"
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echo " -f Force cluster creation by deleting minikube profile"
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echo " -r Enable rook orchestrator"
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echo " -m Enable monitoring"
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echo " Args:"
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sed -n -E "s/^export (.*)=\".*:=.*\" ## (.*)/ \1 (\\$\1): \2/p;" "$SCRIPT_ROOT"/"$(basename "$0")" | envsubst
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echo ""
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}
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invocation_error() {
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printf "%s\n" "$*" > /dev/stderr
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show_usage
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exit 1
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}
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####################################################################
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################# MAIN #############################################
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while getopts ":hrmf" opt; do
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case $opt in
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h)
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show_usage
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exit 0
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;;
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r)
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enable_rook=true
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;;
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m)
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enable_monitoring=true
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;;
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f)
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force_minikube=true
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;;
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\?)
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invocation_error "Invalid option: -$OPTARG"
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;;
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:)
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invocation_error "Option -$OPTARG requires an argument."
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;;
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esac
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done
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# initialization zone
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init_vars
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change_to_examples_dir
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[ -z "$force_minikube" ] && check_minikube_exists
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update_namespaces
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# cluster creation zone
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setup_minikube_env
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create_rook_cluster
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wait_for_rook_operator
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wait_for_ceph_cluster
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# final tweaks and ceph cluster tuning
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[ "$enable_rook" = true ] && enable_rook_orchestrator
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[ "$enable_monitoring" = true ] && enable_monitoring
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show_info "$enable_monitoring"
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####################################################################
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####################################################################
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